1: Reference geometry of the hat-stiffener.

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Last updated 06 Jun 2024
1: Reference geometry of the hat-stiffener.
Download scientific diagram | 1: Reference geometry of the hat-stiffener.  from publication: Exploration and validation of integrated lightweight structures with additive manufacturing and fiber-reinforced polymers | This thesis presents and explores a set of novel approaches for the development of hybrid, integrated, lightweight, structures by combining additive manufacturing (AM) with fiber-reinforced polymers (FRP) in layup processes. The presented methods combine the strengths of both | Principle-Based Ethics, Trusses and Tensile Test | ResearchGate, the professional network for scientists.
1: Reference geometry of the hat-stiffener.
Minimum cost design as a function of stiffener spacing (hat stiffener)
1: Reference geometry of the hat-stiffener.
Dynamic behavior of top-hat bonded stiffened composite panels: Experimental characterization - ScienceDirect
1: Reference geometry of the hat-stiffener.
Damage mechanics of top-hat stiffeners used in FRP ship construction - ScienceDirect
1: Reference geometry of the hat-stiffener.
Frontiers A new design method for stiffened plate based on topology optimization with min-max length-scale control
1: Reference geometry of the hat-stiffener.
Typical top-hat-stiffener configuration
1: Reference geometry of the hat-stiffener.
Stiffener - an overview
1: Reference geometry of the hat-stiffener.
1: Reference geometry of the hat-stiffener.
1: Reference geometry of the hat-stiffener.
Y-stiffeners with 90° inclination angle of hat webs (lighter weight
1: Reference geometry of the hat-stiffener.
Experiment and optimization of the hat-stringer-stiffened composite panels under axial compression - ScienceDirect
1: Reference geometry of the hat-stiffener.
Carbon Fiber Stiffeners, Carbon Fiber Composites

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